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Continuous-time gray-box identification of mechanical systems using subspace-based identification methods

Björn Olofsson, Olof Sörnmo, Anders Robertsson, Rolf Johansson

Year
2014
Citations
2

Abstract

We consider the problem of gray-box identification of dynamic models for mechanical systems. In particular, the problem is approached by means of continuous-time system identification using subspace-based methods based on discrete-time input-output data. A method is developed, with the property that the structure of the model resulting from fundamental physical first principles is obtained and the parameter matrices have a clear physical interpretation. The proposed method is subsequently successfully validated in both simulation and using experimental data from a three-axis manipulator. In both cases the identified models exhibit good fit to the input-output data. The results indicate that the proposed method can be useful in the context of model-based control design in, for example, impedance force control for robots and manipulators, but also for modal analysis of mechanical systems.

Keywords

Subspace topologyComputer scienceSystem identificationMechanical systemMechanical impedanceIdentification (biology)ModalControl theory (sociology)Property (philosophy)Robot manipulator

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